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Ultrasound-Mediated Biophotonic Imaging: A Review of Acousto-Optical Tomography and Photo-Acoustic Tomography

机译:超声介导的生物光子成像:声光层析成像和光声层析成像的回顾。

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This article reviews two types of ultrasound-mediated biophotonic imaging–acousto-optical tomography (AOT, also called ultrasound-modulated optical tomography) and photo-acoustic tomography (PAT, also called opto-acoustic or thermo-acoustic tomography)–both of which are based on non-ionizing optical and ultrasonic waves. The goal of these technologies is to combine the contrast advantage of the optical properties and the resolution advantage of ultrasound. In these two technologies, the imaging contrast is based primarily on the optical properties of biological tissues, and the imaging resolution is based primarily on the ultrasonic waves that either are provided externally or produced internally, within the biological tissues. In fact, ultrasonic mediation overcomes both the resolution disadvantage of pure optical imaging in thick tissues and the contrast and speckle disadvantages of pure ultrasonic imaging. In our discussion of AOT, the relationship between modulation depth and acoustic amplitude is clarified. Potential clinical applications of ultrasound-mediated biophotonic imaging include early cancer detection, functional imaging, and molecular imaging.
机译:本文介绍了两种类型的超声介导的生物光子成像-声光层析成像(AOT,也称为超声调制光学层析成像)和光声层析成像(PAT,也称为光声层析成像或热声层析成像)-两者基于非电离的光学和超声波。这些技术的目标是将光学特性的对比度优势和超声的分辨率优势相结合。在这两种技术中,成像对比度主要基于生物组织的光学特性,成像分辨率主要基于生物组织内部或外部产生的超声波。实际上,超声介导克服了厚组织中纯光学成像的分辨率劣势以及纯超声成像的对比度和斑点劣势。在我们对AOT的讨论中,阐明了调制深度和声振幅之间的关系。超声介导的生物光子成像的潜在临床应用包括早期癌症检测,功能成像和分子成像。

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